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干湿循环作用下聚丙烯纤维增强钢渣-膨润土压实混合物的水文响应与抗裂性能。

Hydrological response and crack resistance of polypropylene-fiber reinforced compacted steel slag-bentonite mixtures under wetting-drying cycles.

机构信息

MOE Key Laboratory of Soft Soils and Geoenvironmental Engineering, Department of Civil Engineering, Zhejiang University, China.

Zhejiang Province Architectural Design and Research Institute, Hangzhou, China.

出版信息

Waste Manag. 2024 Oct 1;187:252-261. doi: 10.1016/j.wasman.2024.07.019. Epub 2024 Jul 29.

Abstract

Desiccation-induced cracks in a compacted clay liner significantly deteriorate the hydraulic barrier performance of landfill covers. The present study explores the effects of polypropylene (PP) fiber reinforcement on the hydrological response and crack resistance of compacted steel slag (SS; 90 wt%) - bentonite (10 wt%) mixtures under drying and wetting cycles. Comprehensive tests were conducted to explore the impact of different fiber lengths (6-12 mm) and contents (0-0.4 % wt.%), including hydraulic conductivity tests for measuring the saturated hydraulic conductivity (k), unconfined-penetration tests for measuring the tensile strength, small-sized plate tests for quantifying crack development, and large-sized bucket tests for studying the hydrological response and crack characteristics. Higher fiber contents and longer fiber lengths increased the k-value of the specimens. For a 0.3 % fiber content, the tensile strength peaked for the 9-mm fiber. Consistently, the specimen reinforced with the 9-mm fibers exhibited significantly fewer cracks than those reinforced with the 6-mm and 12-mm fibers. It was because the 6-mm fibers had a shorter anchorage length, while the 12-mm fibers tended to agglomerate. The large-sized bucket tests showed that fiber reinforcement limited crack development significantly under wetting and drying cycles, reducing the rainfall infiltration by 40 % and enhancing the soil water retention capacity. Finally, a 0.3 wt% of 9-mm PP was recommended to reinforce the compacted SS-bentonite mixtures.

摘要

压实钢渣-膨润土混合物在干燥和湿循环下的水力响应和抗裂性研究

压实粘土衬垫中的干燥诱导裂缝会显著降低垃圾填埋场覆盖层的水力屏障性能。本研究探讨了聚丙烯(PP)纤维增强对压实钢渣(SS;90wt%)-膨润土(10wt%)混合物在干燥和湿循环下的水力响应和抗裂性的影响。进行了综合测试,以研究不同纤维长度(6-12mm)和含量(0-0.4wt.%)的影响,包括测量饱和水力传导率(k)的水力传导率测试、测量拉伸强度的无约束渗透测试、量化裂缝发展的小尺寸板测试以及研究水力响应和裂缝特征的大尺寸桶测试。更高的纤维含量和更长的纤维长度增加了试样的 k 值。对于 0.3%的纤维含量,9mm 纤维的拉伸强度最高。同样,用 9mm 纤维增强的试样比用 6mm 和 12mm 纤维增强的试样出现的裂缝明显更少。这是因为 6mm 纤维的锚固长度较短,而 12mm 纤维容易团聚。大型桶测试表明,纤维增强在湿-干循环下显著限制了裂缝的发展,减少了 40%的降雨入渗,并提高了土壤保水能力。最后,建议在压实的 SS-膨润土混合物中添加 0.3wt%的 9mm PP 纤维进行增强。

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